Extended leaf longevity in the ore4-1 mutant of Arabidopsis with a reduced expression of a plastid ribosomal protein gene

  • Hye Ryun Woo
  • , Chang Hyo Goh
  • , Joon Hyun Park
  • , Bernard Teyssendier De La Serve
  • , Jin Hee Kim
  • , Youn Il Park
  • , Hong Gil Nam

Research output: Contribution to journalArticlepeer-review

77 Scopus citations

Abstract

The longevity of plant leaf organs is genetically determined. However, the molecular mechanisms underlying the control of longevity are still largely unknown. Here, we describe a T-DNA-insertional mutation of Arabidopsis thaliana that confers extended leaf longevity. The mutation, termed ore4-1, delays a broad spectrum of age-dependent leaf senescence, but has little effect on leaf senescence artificially induced by darkness, abscisic acid (ABA), methyl jasmonate (MeJA), or ethylene. The T-DNA was inserted within the promoter region of the plastid ribosomal small subunit protein 17 (PRPS17) gene, and this insertion dramatically reduced PRPS17 mRNA expression. In the ore4-1 mutant, the leaf growth rate is decreased, while the maturation timing is similar to that of wild-type. In addition, the activity of the photosystem 1 (PSI) is significantly reduced in the ore4-1 mutant, as compared to wild-type. Thus, the ore4-1 mutation results in a deficiency in various chloroplast functions, including photosynthesis, which may decrease leaf growth. Our results suggest a possible link between reduced metabolism and extended longevity of the leaf organs in the ore4-1 mutation.

Original languageEnglish
Pages (from-to)331-340
Number of pages10
JournalPlant Journal
Volume31
Issue number3
DOIs
StatePublished - Aug 2002

Keywords

  • Age
  • Arabidopsis thaliana
  • Leaf senescence
  • Ore4
  • Photosystem I
  • Plastid ribosomal protein 17

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